Wednesday, September 9, 2026 15:00 MLIT Room 310. Online via MTS Link Vladimir KornyakQuantum Mechanics over Galois Fields: Computer-Algebraic Analysis and Emergent Properti Abstract: The report examines alternative models of quantum systems that go beyond the standard formulation of quantum theory. To describe quantum states, instead of a continuous projective complex Hilbert space, projective spaces over finite fields IFq are used. Eliminating non-constructive infinities and continuous elements of the theory allows one to focus on the essential features of quantum behavior and makes detailed computer analysis possible. In particular, it is shown that: The fundamental projective properties of quantum systems and the probabilistic nature of their macroscopic behavior (indeterminism) can be explained as emergent properties arising from averaging over gauge degrees of freedom the microscopic interactions of vectors that form projective rays. The Pauli exclusion principle and fermion statistics follow naturally from the arithmetic properties of fields of characteristic 2, which may indicate a fundamental role of fields of the form IF2m in the description of fermionic matter. For computer simulation and full combinatorial analysis of the proposed models, an original high-performance software package in the C language was developed. Information on the seminar and the link to connect are available at Indico. Сonnecting to MTS Link.